• 제목/요약/키워드: health-promoting microorganisms

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자일로올리고당이 장내 세균에 미치는 영향 (Effects of Xylooligosaccharides on the Growth of Intestinal Microflora.)

  • 류보경;이지완;이창승;현승일;박윤제;안준배;양창근;윤세왕
    • 한국미생물·생명공학회지
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    • 제30권4호
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    • pp.380-387
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    • 2002
  • 대한제당(주) 중앙연구소에서 기능성 감미료로서 개발한 자일로올리고당이 장내세균의 생장에 미치는 영향을 알아보기 위하여 in vitro실험을 하였다. 탄소원 이용능을 알아보기 위하여 당이용능검색배지인 m-PYF medium에 탄소원으로서 자일로올리고당과 시판중인 올리고당인 이소말토올리고당과 프럭토올리고당, sucrose를 각각 0.5%(w/v) 첨가한 후 여러 장내 세균을 각각 배양하였다. 장내유익균인 Bifidobacterium bifidum, Bifidobacterium infantis, Bifidobacterium longum, Lactobacillus casei 및 Lactobacillus acidophilus는 다른 탄소원보다 자일로올리고당이 첨가된 배지에서 훨씬 더 잘 생장하였으나, Clostridium perfringens, Bacteroides fragilis, Escherichia coli, Staphylococcus aureus와 Salmonella typhumurium 등 장내 유해균은 생장이 저해되었다 또한, 이들 세균을 혼합배양한 경우에도 장내 유익균의 생균수는 증가하였고, 유해균은 상대적으로 낮은 농도로 억제되었다. 충치를 유발하는 원인 균주인 Strepto-coccus mutans를 자일로올리고당이 첨가된 m-PYF medium에서 배양하였을 때 배양액의 pH가 5.0이상으로 유지되었다. 이러한 결과들을 볼 때 자일로올리고당은 인체의 장내 유익균에만 선택적으로 작용하여 생장을 증진시킬 뿐 아니라, S. mutans의 생장시 산 생성을 억제함으로써 충치 발생을 예방할 수 있을 것으로 사료된다.

Microbiome of Halophytes: Diversity and Importance for Plant Health and Productivity

  • Mukhtar, Salma;Malik, Kauser Abdulla;Mehnaz, Samina
    • 한국미생물·생명공학회지
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    • 제47권1호
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    • pp.1-10
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    • 2019
  • Saline soils comprise more than half a billion hectares worldwide. Thus, they warrant attention for their efficient, economical, and environmentally acceptable management. Halophytes are being progressively utilized for human benefits. The halophyte microbiome contributes significantly to plant performance and can provide information regarding complex ecological processes involved in the osmoregulation of halophytes. Microbial communities associated with the rhizosphere, phyllosphere, and endosphere of halophytes play an important role in plant health and productivity. Members of the plant microbiome belonging to domains Archaea, Bacteria, and kingdom Fungi are involved in the osmoregulation of halophytes. Halophilic microorganisms principally use compatible solutes, such as glycine, betaine, proline, trehalose, ectoine, and glutamic acid, to survive under salinity stress conditions. Plant growth-promoting rhizobacteria (PGPR) enhance plant growth and help to elucidate tolerance to salinity. Detailed studies of the metabolic pathways of plants have shown that plant growth-promoting rhizobacteria contribute to plant tolerance by affecting the signaling network of plants. Phytohormones (indole-3-acetic acid and cytokinin), 1-aminocyclopropane-1-carboxylic acid deaminase biosynthesis, exopolysaccharides, halocins, and volatile organic compounds function as signaling molecules for plants to elicit salinity stress. This review focuses on the functions of plant microbiome and on understanding how the microorganisms affect halophyte health and growth.

A Case Study on the Brand Development of Odor-reducing Feed Additives

  • Gok Mi Kim
    • International journal of advanced smart convergence
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    • 제13권1호
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    • pp.194-200
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    • 2024
  • In the past, antibiotics and antimicrobial substances have been used for the purpose of promoting the growth of livestock or treating livestock, but various problems such as the presence of livestock products or resistant bacteria have emerged. Recently, regulations on the use of antibiotics have been strengthened worldwide, and probiotics are attracting attention as an alternative. Probiotic microorganisms have already been used for human use, such as intestinal abnormal fermentation, diarrhea, and indigestion. In livestock, beneficial microorganisms are increasing in use for the purpose of improving productivity, such as promoting livestock development and preventing diarrhea. Therefore, it is advisable to understand livestock probiotics in deeper and think about effective uses. The role of probiotics in the livestock sector is made with microorganisms themselves, so it is a substance that promotes livestock growth and improves feed efficiency by settling in the intestines of livestock, suppressing the growth of other harmful microorganisms, helping digestion and absorption of ingested feed, and helping to synthesize other nutrients. There is a need for a probiotic that suppresses intestinal bacteria by supplying probiotics used as a means to minimize the effects of stress in livestock management, thereby suppressing disease outbreaks by maintaining beneficial microorganisms and suppressing pathogenic microorganisms. The purpose of this paper is to develop a brand of feed additive probiotics to improve health conditions due to increased feed intake, improve the efficiency of use of feed nutrients, inhibit the decomposition and production of toxic substances, increase immunity, reduce odor in livestock, and improve the environment. We investigated and analyzed feed additive probiotics already on the market, and developed the naming and logo of suitable feed additive probiotic brands in livestock. We hoped that the newly developed product will be used in the field and help solve problems in the livestock field.

중금속 오염 토양 정화를 위한 식물생장촉진세균: 특성, 활용 및 전망 (Plant Growth-promoting Bacteria for Remediation of Heavy Metal Contaminated Soil: Characteristics, Application and Prospects)

  • 조경숙
    • 한국미생물·생명공학회지
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    • 제48권4호
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    • pp.399-422
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    • 2020
  • 도시화 및 산업화로 인해 발생된 중금속으로 오염된 토양의 정화는 인간의 건강 뿐 아니라 지구생태계의 지속성을 위해 매우 중요하다. 중금속 오염 토양 정화 기술 중 식물상복원법은 타 방법에 비해 처리 단가가 저렴하고, 토양 비옥도 및 생물 다양성이 영향을 덜 받는 환경친화적인 방법이다. 이러한 식물상복원법에 식물생장촉진세균(plant growth promoting bacteria, PGPB)을 도입하여 중금속 독성 하에서 식물 생장을 촉진하고 중금속 정화 효율을 향상시킬 수 있다. 본 논문에서는 주요 토양오염물인 중금속의 발생원, 미생물·식물·인간에 미치는 중금속 영향 및 PGPB의 식물생장촉진 기작을 정리하였다. 중금속 오염 토양 정화를 위하여 식물상복원에 PGPB의 활용에 관한 최근 10년 동안의 연구 동향을 분석하였다. 또한, PGPB의 실제 적용 시 중금속 제거 효율에 미치는 다양한 환경 인자와 PGPB의 접종 방법의 영향을 고찰하였다. PGPB 활용 식물상복원 기술의 혁신을 위해서는 실제 현장에서 PGPB의 거동과 식물-PGPB-자생미생물 사이의 상호작용에 대한 이해가 필요하다.

쑥의 분획추출물들이 주요 장내세균의 in vitro 생육에 미치는 영향 (Effect of the Fractionated Extracts of Mugwort on the in vitro Growth of Some Intestinal Microorganisms)

  • 이선화
    • Journal of Nutrition and Health
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    • 제28권11호
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    • pp.1065-1072
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    • 1995
  • Mugwort was successively fractionated with n-hexane, chloroform, ethyl acetate, n-butanol and water and the fractions were evaluated by their growth-promoting activites for Bifidobacterium sp. in vitro experiments. The growths of Bifidobacterium adolescentis, B. bifidum, B. infantis and B.longum were enhanced with the addition of the water fraction, while the fractions of chloroform and ethylacetate inhibited Clostridium perfringens. When the wate fraction was added to media at a concentration of 0.01-0.5%(w/v), the growhts of Bifidobacterium sp. were increased according to the concentration of water fraction used. The water fraction stimulated also the growth of lactobacillus acidophillus, whereas those of E. coli and Enterococcus faecalis were not affected. The growth-promoting activity of water fraction was stable at the range of pH 2 to pH 10 and kept in thermal treatment at 10$0^{\circ}C$ for 30 minutes.

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Glycine max Merr enhances the viability and adhesion ability of Lactobacillus buchneri in gastrointestinal condition in vitro.

  • Seo, Jae-Bin;Park, Bog-Im;Myung, Hyun;Sim, Hyeon-Jae;Lee, Hoon-Yeon;Kim, Seong-Oh;Song, Kyoung-Ha;Lee, So-Jin;Cho, Jung Hee;Jeon, Yong-Deok;Jin, Jong-Sik
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2018년도 추계학술대회
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    • pp.127-127
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    • 2018
  • Probiotics are microorganisms that have beneficial effects on the health of the host. The health promoting effect by probiotics influences suppressing harmful bacteria, prevention of constipation, blood cholesterol reduction and regulation of blood pressure. Prebiotics are used to promote the growth or activity of microorganisms. Synbiotics, which are a mixture of probiotics and prebiotics, synergize in the intestines by complementing each other. Synbiotics not only improves the viability of the probiotics while passing through the gastrointestinal tract, maintain intestinal homeostasis, but also regulate balance of harmful and useful bacterial growth. Glycine max Merr (GMM) has been widely used in Asian countries to treat cancer, obesity, oxidative stress and imbalanced immune diseases. In addition, it has been reported that dietary fiber-rich grains promote bowel movements and prevent constipation. In this study, we investigated the viability of LactobacillIus buchneri (L.buchneri) strains, known as lactic acid bacteria under conditions of gastric fluid and intestinal fluid to determine the suitability of L.buchneri as probiotics. The adhesion ability of L.buchneri to caco-2 cells was also confirmed. The present studies showed that GMM extract promoted the growth and activity of L.buchneri strains as prebiotics. Also, this results suggested that the mixture of L.buchneri and GMM extract can helps maintain intestinal health and healthy body as synbiotics and health functional food material.

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Synergistic Effects of Arbuscular Mycorrhizal Fungi and Plant Growth Promoting Rhizobacteria for Sustainable Agricultural Production

  • Ramasamy, Krishnamoorthy;Joe, Manoharan Melvin;Kim, Ki-Yoon;Lee, Seon-Mi;Shagol, Charlotte;Rangasamy, Anandham;Chung, Jong-Bae;Islam, Md. Rashedul;Sa, Tong-Min
    • 한국토양비료학회지
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    • 제44권4호
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    • pp.637-649
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    • 2011
  • Soil microorganisms play a major role in improving soil fertility and plant health. Symbiotic arbuscular mycorrhizal fungi (AMF) form a key component of the soil microbial populations. AMF form a mutualistic association with the host plant and exert a positive influence on its growth and nutrient uptake. The establishment of mycorrhizal symbioses with the host plant can positively be influenced by plant growth promoting rhizobacteria through various mechanisms such as increased spore germination and hyphal permeability in plant roots. Though there are evidences that combined interactions between AMF and PGPR can promote the plant growth however mechanisms of these interactions are poorly understood. Better understanding of the interactions between AMF and other microorganisms is necessary for maintaining soil fertility and enhancing crop production. This paper reviews current knowledge concerning the interactions between AMF and PGPR with plants and discusses on enhanced nutrient availability, biocontrol, abiotic stress tolerance and phytoremediation in sustainable agriculture.

Probiotics in the Prevention and Treatment of Postmenopausal Vaginal Infections: Review Article

  • Kim, Jun-Mo;Park, Yoo Jin
    • Journal of Menopausal Medicine
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    • 제23권3호
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    • pp.139-145
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    • 2017
  • Bacterial vaginosis (BV) and complicated vulvovaginal candidiasis (VVC) are frequently occurring vaginal infections in postmenopausal women, caused by an imbalance in vaginal microflora. Postmenopausal women suffer from decreased ovarian hormones estrogen and progesterone. A normal, healthy vaginal microflora mainly comprises Lactobacillus species (spp.), which act beneficially as a bacterial barrier in the vagina, interfering with uropathogens. During premenopausal period, estrogen promotes vaginal colonization by lactobacilli that metabolizing glycogen and producing lactic acid, and maintains intravaginal health by lowering the intravaginal pH level. A lower vaginal pH inhibits uropathogen growth, preventing vaginal infections. Decreased estrogen secretion in postmenopausal women depletes lactobacilli and increases intravaginal pH, resulting in increased vaginal colonization by harmful microorganisms (e.g., Enterobacter, Escherichia coli, Candida, and Gardnerella). Probiotics positively effects on vaginal microflora composition by promoting the proliferation of beneficial microorganisms, alters the intravaginal microbiota composition, prevents vaginal infections in postmenopausal. Probiotics also reduce the symptoms of vaginal infections (e.g., vaginal discharge, odor, etc.), and are thus helpful for the treatment and prevention of BV and VVC. In this review article, we provide information on the intravaginal mechanism of postmenopausal vaginal infections, and describes the effectiveness of probiotics in the treatment and prevention of BV and VVC.

Improvement of Inflammation, Diabetes, and Obesity by Forest Product-Derived Polysaccharides through the Human Intestinal Microbiota

  • Seong-woo MYEONG;Yong Ju LEE;Do Hyun KIM;Tae-Jong KIM
    • Journal of the Korean Wood Science and Technology
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    • 제51권5호
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    • pp.358-380
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    • 2023
  • The intestinal microbiota plays a crucial role in determining human health, rendering it a major focus of scientific investigation. Rather than eliminating all microbes, promoting the proliferation of beneficial microorganisms within the gut has been recognized as a more effective approach to improving health. Unfavorable conditions potentially alter gut microbial populations, including a reduction in microbial diversity. However, intentionally enhancing the abundance of beneficial gut microbes can restore a state of optimal health. Polysaccharides are widely acknowledged for their potential to improve the gut microbiota. This review emphasizes the findings of recent studies examining the effects of forest product-derived polysaccharides on enhancing the gut microbiota and alleviating inflammation, diabetes symptoms, and obesity. The findings of several studies reviewed in this paper strongly suggest that forest products serve as an excellent dietary source for improving the gut microbiota and potentially offer valuable dietary interventions for chronic health problems, such as inflammation, diabetes, and obesity.

The Functional Roles of Lactobacillus acidophilus in Different Physiological and Pathological Processes

  • Gao, Huijuan;Li, Xin;Chen, Xiatian;Hai, Deng;Wei, Chuang;Zhang, Lei;Li, Peifeng
    • Journal of Microbiology and Biotechnology
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    • 제32권10호
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    • pp.1226-1233
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    • 2022
  • Probiotics are live microorganisms that can be consumed by humans in amounts sufficient to offer health-promoting effects. Owing to their various biological functions, probiotics are widely used in biological engineering, industry and agriculture, food safety, and the life and health fields. Lactobacillus acidophilus (L. acidophilus), an important human intestinal probiotic, was originally isolated from the human gastrointestinal tract and its functions have been widely studied ever since it was named in 1900. L. acidophilus has been found to play important roles in many aspects of human health. Due to its good resistance against acid and bile salts, it has broad application prospects in functional, edible probiotic preparations. In this review, we explore the basic characteristics and biological functions of L. acidophilus based on the research progress made thus far worldwide. Various problems to be solved regarding the applications of probiotic products and their future development are also discussed.